Spider-venom peptides that target voltage-gated sodium channels: Pharmacological tools and potential therapeutic leads

被引:192
作者
Klint, Julie K. [1 ]
Senff, Sebastian [1 ]
Rupasinghe, Darshani B. [1 ]
Er, Sing Yan [1 ]
Herzig, Volker [1 ]
Nicholson, Graham M. [2 ]
King, Glenn F. [1 ]
机构
[1] Univ Queensland, Inst Mol Biosci, St Lucia, Qld 4072, Australia
[2] Univ Technol Sydney, Neurotoxin Res Grp, Sch Med & Mol Biosci, Sydney, NSW 2007, Australia
基金
澳大利亚研究理事会; 英国医学研究理事会;
关键词
Spider venom; Peptide; Inhibitor cystine knot; Voltage-gated sodium channel; Therapeutic; Analgesic; Insecticide; ArachnoServer; Na(v)1.7; FUNNEL-WEB SPIDER; BRAZILIAN ARMED SPIDER; EXTREME PAIN DISORDER; OF-FUNCTION MUTATIONS; AMINO-ACID-SEQUENCE; GATING MODIFIER; HUWENTOXIN-I; INSECTICIDAL PEPTIDES; DELTA-ATRACOTOXINS; LETHAL NEUROTOXIN;
D O I
10.1016/j.toxicon.2012.04.337
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Voltage-gated sodium (Na-v) channels play a central role in the propagation of action potentials in excitable cells in both humans and insects. Many venomous animals have therefore evolved toxins that modulate the activity of Na-v channels in order to subdue their prey and deter predators. Spider venoms in particular are rich in Na-v channel modulators, with one-third of all known ion channel toxins from spider venoms acting on Na-v channels. Here we review the landscape of spider-venom peptides that have so far been described to target vertebrate or invertebrate Na-v channels. These peptides fall into 12 distinct families based on their primary structure and cysteine scaffold. Some of these peptides have become useful pharmacological tools, while others have potential as therapeutic leads because they target specific Na-v channel subtypes that are considered to be important analgesic targets. Spider venoms are conservatively predicted to contain more than 10 million bioactive peptides and so far only 0.01% of this diversity been characterised. Thus, it is likely that future research will reveal additional structural classes of spider-venom peptides that target Na-v channels. (c) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:478 / 491
页数:14
相关论文
共 118 条
[1]   Agatoxins:: ion channel specific toxins from the American funnel web spider, Agelenopsis aperta [J].
Adams, ME .
TOXICON, 2004, 43 (05) :509-525
[2]   Penile erection induced in vivo by a purified toxin from the Brazilian spider Phoneutria nigriventer [J].
Andrade, Enrico ;
Villanova, Fabiola ;
Borra, Priscila ;
Leite, Katia ;
Troncone, Lanfranco ;
Cortez, Italo ;
Messina, Leonardo ;
Paranhos, Mario ;
Claro, Joaquim ;
Srougi, Miguel .
BJU INTERNATIONAL, 2008, 102 (07) :835-837
[3]   Animal peptides targeting voltage-activated sodium channels [J].
Billen, Bert ;
Bosmans, Frank ;
Tytgat, Jan .
CURRENT PHARMACEUTICAL DESIGN, 2008, 14 (24) :2492-2502
[4]   Mode of action of an insecticidal peptide toxin from the venom of a weaving spider (Diguetia canities) [J].
Bloomquist, JR ;
Kinne, LP ;
Deutsch, V ;
Simpson, SF .
TOXICON, 1996, 34 (09) :1072-1075
[5]   Four novel tarantula toxins as selective modulators of voltage-gated sodium channel subtypes [J].
Bosmans, F ;
Rash, L ;
Zhu, SY ;
Diochot, S ;
Lazdunski, M ;
Escoubas, P ;
Tytgat, J .
MOLECULAR PHARMACOLOGY, 2006, 69 (02) :419-429
[6]   Sea anemone venom as a source of insecticidal peptides acting on voltage-gated Na+ channels [J].
Bosmans, Frank ;
Tytgat, Jan .
TOXICON, 2007, 49 (04) :550-560
[7]   Targeting voltage sensors in sodium channels with spider toxins [J].
Bosmans, Frank ;
Swartz, Kenton J. .
TRENDS IN PHARMACOLOGICAL SCIENCES, 2010, 31 (04) :175-182
[8]  
Brennan F, 2007, ANESTH ANALG, V105, P205, DOI 10.1213/01.ane.0000268145.52345.55
[9]   Pain and Opioid Addiction: What is the Connection? [J].
Carinci, Adam J. ;
Mao, Jianren .
CURRENT PAIN AND HEADACHE REPORTS, 2010, 14 (01) :17-21
[10]   International Union of Pharmacology. XLVII. Nomenclature and structure-function relationships of voltage-gated sodium channels [J].
Catterall, WA ;
Goldin, AL ;
Waxman, SG .
PHARMACOLOGICAL REVIEWS, 2005, 57 (04) :397-409